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Development and characterization of a magnetorheological elastomer based adaptive seismic isolator

机译:基于磁流变弹性体的自适应隔震器的研制与表征

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One of the main shortcomings in current base isolation design/practice is lack of adaptability. As a result, a base isolation system that is effective for one type earthquake may become ineffective or may have adverse effect for other earthquakes. The vulnerability of traditional base isolation systems can be exaggerated by two types of earthquakes, i.e. near-field earthquakes and far-field earthquakes. This paper addresses the challenge facing current base isolation design/practice by proposing a new type of seismic isolator for the base isolation system, namely an adaptive seismic isolator. The novel adaptive seismic isolator utilizes magnetorheological elastomer (MRE) for its field-sensitive material property. Traditional seismic isolator design with a unique laminated structure of steel and MRE layers has been adopted in the novel MRE seismic isolator. To evaluate and characterize the behavior of the MRE seismic isolator, experimental testing was conducted on a shake table facility under harmonic cycling loading. Experimental results show that the proposed adaptive seismic isolator can successfully alter the lateral stiffness and damping force in real time up to 37% and 45% respectively. Based on the successful development of the novel adaptive seismic isolator, a discussion is also extended to the impact and potential applications of such a device in structural control applications in civil engineering.
机译:当前的基础隔离设计/实践的主要缺点之一是缺乏适应性。结果,对一种类型的地震有效的基础隔离系统可能无效,或可能对其他地震产生不利影响。两种类型的地震,即近场地震和远场地震,可能会放大传统基础隔离系统的脆弱性。本文针对基础隔离系统提出了一种新型的隔震器,即自适应隔震器,从而解决了当前基础隔震设计/实践面临的挑战。新型自适应地震隔离器利用磁流变弹性体(MRE)的场敏感材料特性。新型MRE隔震器采用了具有独特的钢和MRE层层叠结构的传统隔震器设计。为了评估和表征MRE隔震器的性能,在振动台上在谐波循环载荷下进行了实验测试。实验结果表明,所提出的自适应隔震器可以成功地实时改变侧向刚度和阻尼力,分别达到37%和45%。基于新型自适应地震隔离器的成功开发,还讨论了这种装置在土木工程中的结构控制应用中的影响和潜在应用。

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